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A novel cement-based hybrid material
Albert G. Nasibulin
*
, Sergey D. Shandakov
, Larisa I. Nasibulina
, Andrzej Cwirzen
, Prasantha R. Mudimela
, Karin Habermehl-Cwirzen
, Dmitrii A. Grishin
, Yuriy V. Gavrilov
, Jari E.M. Malm
, Unto Tapper
, Ying Tian
, Vesa Penttala
, M.J. Karppinen
, Esko I. Kauppinen
*
*
Corresponding author for this work
Helsinki University of Technology
Kemerovo State University
Mendeleev University of Chemical Technology
VTT (former employee or external)
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
126
Citations (Scopus)
Overview
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Keyphrases
Hybrid Materials
100%
Cement-based
100%
Carbon Nanotubes
100%
Novel Cements
100%
Carbon Nanofibers
60%
Electrical Conductivity
40%
Carbon-carbon
40%
Carbon Nanomaterials
40%
Tensile Strength
20%
Thermal Conductivity
20%
High Performance
20%
Sand
20%
Compressive Strength
20%
Elastic Modulus
20%
Electrically Conductive
20%
Construction Materials
20%
One-step Process
20%
Good Dispersion
20%
Hardened Paste
20%
Cement Particles
20%
Large Obstacle
20%
Multifunctional Composites
20%
Thermally Conductive
20%
Carbon Nanofiber Composite
20%
Conductive Carbon Nanotubes
20%
INIS
hybrids
100%
carbon
100%
cements
100%
nanofibers
66%
carbon nanotubes
66%
matrices
50%
nanomaterials
33%
particles
33%
electrical conductivity
33%
performance
16%
surfaces
16%
construction
16%
dispersions
16%
tensile strength
16%
purification
16%
thermal conductivity
16%
sand
16%
compression strength
16%
composite materials
16%
Material Science
Hybrid Material
100%
Carbon Nanofiber
100%
Carbon Nanotubes
100%
Nanostructured Material
50%
Electrical Conductivity
50%
Elastic Moduli
25%
Building Material
25%
Compressive Strength
25%
Composite Material
25%
Thermal Conductivity
25%
Functional Composite Material
25%
Ultimate Tensile Strength
25%
Surface (Surface Science)
25%